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A sample-to-answer, portable platform for rapid detection of pathogens with a smartphone interface

机译:用于快速检测具有智能手机界面的病原体的样本 - 回答,便携式平台

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Emerging and re-emerging infectious diseases pose global threats to human health. Although several conventional diagnostic methods have been widely adopted in the clinic, the long turn-around times of "gold standard" culture-based techniques, as well as the limited sensitivity of lateral-flow strip assays, thwart medical progress. In this study, a smartphone-controlled, automated, and portable system was developed for rapid molecular diagnosis of pathogens (including viruses and bacteria) via the use of a colorimetric loop-mediated isothermal amplification (LAMP) approach on a passive, self-driven microfluidic device. The system was capable of 1) purifying viral or bacterial samples with specific affinity reagents that had been pre-conjugated to magnetic beads, 2) lysing pathogens at low temperatures, 3) executing isothermal nucleic acid amplification, and 4) quantifying the results of colorimetric assays for detection of pathogens with an integrated color sensor. The entire, 40 min analytical process was automatically performed with a novel punching-press mechanism that could be controlled and monitored by a smartphone. As a proof of concept, the influenza A (H1N1) virus and methicillin-resistant Staphylococcus aureus bacteria were used to characterize and optimize the device, and the limits of detection were experimentally found to be 3.2 x 10(-3) hemagglutinating units (HAU) per reaction and 30 colony-forming units (CFU) per reaction, respectively; both such values represent high enough sensitivity for clinical adoption. Moreover, the colorimetric assay could be both qualitative and quantitative for detection of pathogens. This is the first instance of an easy-to-use, automated, and portable system for accurate and sensitive molecular diagnosis of either viruses or bacteria, and it is envisioned that this smartphone-controlled apparatus may serve as a platform for clinical, point-of-care pathogen detection, particularly in resource-limited settings.
机译:新兴和重新出现的传染病对人类健康构成了全球威胁。虽然在诊所中已经广泛采用了几种常规的诊断方法,但是“金标准”培养基技术的长期扭转时间,以及横向流动条测定的有限敏感性,挫败了医学进展。在本研究中,开发了一种智能手机控制,自动化和便携式和便携式系统,用于通过在被动,自动驱动的比色环介导的等温放大(灯)方法上使用比色环介导的等温放大(灯)方法来快速分子诊断病原体(包括病毒和细菌)微流体装置。该系统能够纯化具有预缀合的病毒或细菌样品,所述病毒或细菌样品预先缀合,所述亲和试剂在低温下裂解病原体,3)执行等温核酸扩增,4)量化比色结果用于检测具有集成颜色传感器的病原体的测定。通过一种新的冲压机机构自动执行整个40分钟的分析过程,该机构可以由智能手机控制和监控。作为概念证据,使用流感A(H1N1)病毒和甲氧西林耐金黄色葡萄球菌细菌来表征和优化装置,并通过实验发现检测限为3.2×10(3)血凝单元(HAU )每次反应和30个菌落形成单位(CFU)分别为每次反应;这两个价值都代表了足够高的临床采用敏感性。此外,比色测定可以是定性和定量的对病原体的检测。这是一个易于使用,自动化和便携式系统的第一个实例,用于准确且敏感的病毒或细菌的分子诊断,并且设想该智能手机控制设备可以作为临床,点的平台护理病原体检测,特别是在资源限制的环境中。

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